EP4499143A1 - Targeting immune infiltration to the central nervous system (cns) - Google Patents
Targeting immune infiltration to the central nervous system (cns)Info
- Publication number
- EP4499143A1 EP4499143A1 EP23778675.1A EP23778675A EP4499143A1 EP 4499143 A1 EP4499143 A1 EP 4499143A1 EP 23778675 A EP23778675 A EP 23778675A EP 4499143 A1 EP4499143 A1 EP 4499143A1
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- European Patent Office
- Prior art keywords
- cns
- agent
- disorder
- inflammatory disease
- subject
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P25/00—Drugs for disorders of the nervous system
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P25/00—Drugs for disorders of the nervous system
- A61P25/28—Drugs for disorders of the nervous system for treating neurodegenerative disorders of the central nervous system, e.g. nootropic agents, cognition enhancers, drugs for treating Alzheimer's disease or other forms of dementia
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K16/00—Immunoglobulins [IG], e.g. monoclonal or polyclonal antibodies
- C07K16/18—Immunoglobulins [IG], e.g. monoclonal or polyclonal antibodies against material from animals or humans
- C07K16/28—Immunoglobulins [IG], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants
- C07K16/2896—Immunoglobulins [IG], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants against molecules with a "CD"-designation, not provided for elsewhere
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
- G01N33/48—Biological material, e.g. blood, urine; Haemocytometers
- G01N33/50—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
- G01N33/53—Immunoassay; Biospecific binding assay; Materials therefor
- G01N33/569—Immunoassay; Biospecific binding assay; Materials therefor for microorganisms, e.g. protozoa, bacteria, viruses
- G01N33/56966—Animal cells
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
- G01N33/48—Biological material, e.g. blood, urine; Haemocytometers
- G01N33/50—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
- G01N33/68—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing involving proteins, peptides or amino acids
- G01N33/6893—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing involving proteins, peptides or amino acids related to diseases not provided for elsewhere
- G01N33/6896—Neurological disorders, e.g. Alzheimer's disease
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K2217/00—Genetically modified animals
- A01K2217/07—Animals genetically altered by homologous recombination
- A01K2217/072—Animals genetically altered by homologous recombination maintaining or altering function, i.e. knock in
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K2217/00—Genetically modified animals
- A01K2217/15—Animals comprising multiple alterations of the genome, by transgenesis or homologous recombination, e.g. obtained by cross-breeding
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K2217/00—Genetically modified animals
- A01K2217/20—Animal model comprising regulated expression system
- A01K2217/206—Animal model comprising tissue-specific expression system, e.g. tissue specific expression of transgene, of Cre recombinase
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K2227/00—Animals characterised by species
- A01K2227/10—Mammal
- A01K2227/105—Murine
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K2267/00—Animals characterised by purpose
- A01K2267/03—Animal model, e.g. for test or diseases
- A01K2267/0393—Animal model comprising a reporter system for screening tests
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K39/00—Medicinal preparations containing antigens or antibodies
- A61K2039/505—Medicinal preparations containing antigens or antibodies comprising antibodies
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K2317/00—Immunoglobulins specific features
- C07K2317/70—Immunoglobulins specific features characterized by effect upon binding to a cell or to an antigen
- C07K2317/73—Inducing cell death, e.g. apoptosis, necrosis or inhibition of cell proliferation
- C07K2317/732—Antibody-dependent cellular cytotoxicity [ADCC]
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K2317/00—Immunoglobulins specific features
- C07K2317/70—Immunoglobulins specific features characterized by effect upon binding to a cell or to an antigen
- C07K2317/73—Inducing cell death, e.g. apoptosis, necrosis or inhibition of cell proliferation
- C07K2317/734—Complement-dependent cytotoxicity [CDC]
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2333/00—Assays involving biological materials from specific organisms or of a specific nature
- G01N2333/435—Assays involving biological materials from specific organisms or of a specific nature from animals; from humans
- G01N2333/705—Assays involving receptors, cell surface antigens or cell surface determinants
- G01N2333/70596—Molecules with a "CD"-designation not provided for elsewhere in G01N2333/705
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2800/00—Detection or diagnosis of diseases
- G01N2800/28—Neurological disorders
- G01N2800/285—Demyelinating diseases; Multipel sclerosis
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2800/00—Detection or diagnosis of diseases
- G01N2800/52—Predicting or monitoring the response to treatment, e.g. for selection of therapy based on assay results in personalised medicine; Prognosis
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2800/00—Detection or diagnosis of diseases
- G01N2800/70—Mechanisms involved in disease identification
- G01N2800/7095—Inflammation
Definitions
- the present invention in some embodiments thereof, relates to methods of treating and diagnosing diseases and conditions of the central nervous system (CNS) by determining the expression level of CD157 on CNS infiltrating cells.
- CNS central nervous system
- MS Multiple sclerosis
- EAE experimental autoimmune encephalomyelitis
- mice lacking the chemokine receptor CCR2 a key player in monocyte chemotactic migration, are resistant to EAE [Izikson L. et al., J Exp Med (2000) 192: 1075-1080].
- BM bone marrow
- Monoclonal antibody (mAb) treatment has shown to be potentially effective in the treatment of different inflammatory diseases.
- Available mAb treatment for MS patients targets the adaptive immune system (i.e., T cells and B cells) [Wingerchuk D. M. et al., Mayo Clin Proc (2014) 89: 225-240].
- T cells and B cells adaptive immune system
- CD157 also referred to as bone marrow stromal cell antigen- 1 (BST-1), is a glycosyphosphatidylinositol (GPI)-linked glycoprotein encoded by a member of the NADase/ADP-ribosyl cyclase (cADPR) gene family.
- GPI glycosyphosphatidylinositol
- cADPR NADase/ADP-ribosyl cyclase
- a method of treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising administering to the subject a therapeutically effective amount of an agent capable of binding CD157 on CD157-expressing cells of the CNS, the agent capable of mediating a therapeutic effect, thereby treating the inflammatory disease or disorder of the CNS in the subject.
- CNS central nervous system
- a method of treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising administering to or expressing in a CD157- expressing cell of the CNS of the subject an exogenous polynucleotide encoding an expression product capable of alleviating at least one symptom of the inflammatory disease or disorder, wherein the exogenous polynucleotide is under the transcriptional control of a cis acting regulatory element active specifically in a CD 157 -expressing cell, thereby treating the inflammatory disease or disorder of the CNS in the subject.
- CNS central nervous system
- CNS central nervous system
- an exogenous polynucleotide encoding an expression product capable of alleviating at least one symptom of an inflammatory disease or disorder, wherein the exogenous polynucleotide is under the transcriptional control of a cis acting regulatory element specifically active in a CD 157- expressing cell, for use in treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof.
- CNS central nervous system
- a method of diagnosing an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising analyzing a level of CD157-expressing cells in the CNS of the subject, wherein a level of the CD157-expressing cells above a predetermined threshold is indicative of the inflammatory disease or disorder of the CNS.
- CNS central nervous system
- a method of diagnosing and treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising: (a) analyzing a level of CD157- expressing cells in the CNS of the subject, wherein a level of the CD157-expressing cells above a predetermined threshold is indicative of the inflammatory disease or disorder of the CNS, and (b) administering to the subject a therapeutically effective amount of an agent capable of treating the inflammatory disease or disorder of the CNS in the subject, thereby diagnosing and treating the neuroinflammatory disease or disorder in the subject.
- a method of treating a subject having a tumor mass in the central nervous system comprising: (a) analyzing a level of CD157-expressing cells in the CNS of the subject, wherein a level of the CD157-expressing cells above a predetermined threshold is indicative of presence of the tumor mass in the CNS, and (b) resecting the tumor mass, wherein the resecting is guided by the CD157-expressing cells, thereby treating the subject.
- a method of monitoring efficacy of a therapy to an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising analyzing a level of CD157-expressing cells in the CNS of the subject having been treated with an agent capable of treating the inflammatory disease or disorder of the CNS, and wherein a decrease in the level of CD157-expressing cells in the CNS of the subject from a predetermined threshold following the therapy is indicative of efficacy of the therapy, thereby monitoring efficacy of the therapy.
- CNS central nervous system
- an article of manufacture comprising an anti-CD157 antibody, and an additional agent for the treatment of an inflammatory disease or disorder of the CNS, being packaged in a packaging material and identified in print, in or on the packaging material for use in the treatment of the inflammatory disease or disorder of the CNS.
- a chimeric polynucleotide comprising a nucleic acid sequence encoding an expression product capable of alleviating at least one symptom of an inflammatory disease or disorder and another nucleic acid sequence comprising a cis acting regulatory element specifically active in a CD 157- expressing cell.
- composition of matter comprising the chimeric polynucleotide of some embodiments of the invention, and a particle encapsulating or attached to the chimeric polynucleotide.
- composition of matter comprising the chimeric polynucleotide of some embodiments of the invention, and a particle encapsulating the chimeric polynucleotide.
- composition of matter comprising the chimeric polynucleotide of some embodiments of the invention, and a particle attached to the chimeric polynucleotide.
- analyzing is effected using an agent capable of binding CD157 on CD157-expressing cells in the CNS of the subject.
- the agent capable of treating the inflammatory disease or disorder of the CNS comprises an agent capable of binding CD157 on the CD157-expressing cells of the CNS, the agent capable of mediating a therapeutic effect.
- the agent capable of treating the inflammatory disease or disorder of the CNS is selected from the group consisting of an antiinflammatory drug, an immunosuppressant drug, an immunomodulatory drug, a neuroprotective drug, a cognitive enhancing drug, a cognitive enhancing drug, a remyelination agent and an antitumor agent.
- the antitumor agent is a localized cancer targeting therapy.
- the agent is an antibody or fragment thereof.
- the antibody comprises an anti-CD157 monoclonal antibody or fragment thereof.
- the antibody or fragment thereof is conjugated to a therapeutic moiety.
- the therapeutic moiety is an antiinflammatory cytokine.
- the therapeutic moiety is an agent capable of downregulating an expression of a protein upregulated in the neuroinflammatory disease or disorder.
- the therapeutic moiety is a chemotherapeutic agent.
- the antibody or fragment thereof is conjugated to a detection moiety.
- the agent is a small molecule.
- the cis acting regulatory element is a promoter.
- the promoter comprises a bstl promoter.
- the exogenous polynucleotide is encapsulated in a particle.
- the particle is a viral particle.
- the particle is an Adeno-associated virus (AAV), Lentivirus (LV), adenovirus (Ad), retrovirus, or herpes simplex virus (HSV) particle.
- the particle is an Adeno-associated virus (AAV) particle.
- the expression product comprises a protein
- the protein is selected from the group consisting of an anti-inflammatory protein, a Neuronal survival factor, and a factor supporting remyelination.
- the inflammatory disease or disorder of the CNS is a cancerous disease.
- the cancerous disease is selected from the group consisting of Acoustic neuroma, Astrocytoma, Choroid plexus carcinoma, Craniopharyngioma, Embryonal tumor, Ependymoma, Glioblastoma, Glioma, Medulloblastoma, Meningioma, Oligodendroglioma, Pediatric brain tumor, Pineoblastoma, Pituitary tumor and Brain metastasis.
- the inflammatory disease or disorder of the CNS is selected from the group consisting of Multiple Sclerosis (MS), Acute disseminated encephalomyelitis (ADEM), Acute Optic Neuritis (AON), Transverse Myelitis, Tauopathy, Neuromyelitis Optica (NMO), Autoimmune encephalitis, Viral encephalitis, Rasmussen's syndrome, Acute necrotizing encephalopathy of childhood (ANEC), Opsoclonus-myoclonus ataxia syndrome (OMAS), Parkinson's disease (PD), Alzheimer's disease (AD), Niemann's disease, Huntington's disease, Creutzfeldt- Jakob disease, Traumatic brain injury, Stroke, Spinal cord injury, neuroblastoma, Amyotrophic lateral sclerosis (ALS) and Spinal Muscular Atrophy (SMA).
- MS Multiple Sclerosis
- AON Acute Optic Neuritis
- NMO Neuromyelitis Optica
- the inflammatory disease or disorder of the CNS is Multiple Sclerosis (MS).
- MS Multiple Sclerosis
- the Multiple Sclerosis is relapsing remitting multiple sclerosis (RRMS).
- the Multiple Sclerosis is primary progressive multiple sclerosis (PPMS).
- the Multiple Sclerosis is secondary progressive multiple sclerosis (SPMS).
- the Multiple Sclerosis is an advanced or progressive multiple sclerosis. According to some embodiments of the invention, the Multiple Sclerosis (MS) is an acute multiple sclerosis.
- the CD157-expressing cells comprise monocytes.
- the monocytes comprise CNS- infiltrating monocytes.
- the CNS- infiltrating monocyte is positive for a CD157 marker (CD157+ cell).
- the monocytes express at least one of CDl lb, CD45, CCR2 and Ly6c.
- the monocytes have a CD157 + CD45 + CCR2 + , CD157 + CD14 + CD16 + , CD157 + CD14 + CD16", CD157 + CX3CR1 + or a CD157 + CD45 + CDl lb + signature.
- the additional agent for the treatment of an inflammatory disease or disorder of the CNS is selected from the group consisting of an antiinflammatory drug, an immunosuppressant drug, an immunomodulatory drug, a neuroprotective drug and a cognitive enhancing drug.
- the additional agent for the treatment of an inflammatory disease or disorder of the CNS is an anti-MS therapeutic agent.
- the anti-MS therapeutic agent is selected from the group consisting of a beta interferon, glatiramer (Copaxone®), fingolimod (Gilenya®), natalizumab (Tysabri®), mitoxantrone (Novantrone®), teriflunimide (Aubagio®), BG-12 (Tecfidera®), alemtuzumab (Lemtrada®), daclizumab (Zinbryta®), ocrelizumab (Ocrevus®), amantadine (Symmetrel®), amitriptyline (Elavil®), nortriptyline, modafinil (Provigil®), and dalfampridine (Ampyra®).
- the anti-CD157 antibody and the additional agent for the treatment of an inflammatory disease or disorder of the CNS are comprised in a single formulation.
- the anti-CD157 antibody and the additional agent for the treatment of an inflammatory disease or disorder of the CNS are comprised in separate formulations.
- FIGs. 1A-G illustrate that CD157 is expressed in the CNS only during neuroinflammation.
- Figures 1A-E CD157 expression in naive and EAE tissue.
- Figure ID flow cytometry analysis of CD157 expression in the blood.
- Figure IE Histopathology analysis of lumbar spinal cord serial sections from EAE mouse, sister slides stained with Luxol Fast Blue and anti-CD157.
- FIGs. 2A-E illustrate that CD157 is expressed in the CNS by CD1 lb + CD45 hlgh monocytes .
- Figure 2A immunofluorescence analysis of IBA1 (purple) and CD157 (yellow) in spinal cords isolated from EAE mice. Scale bar 40 mm.
- Figure 2B FACS analysis of cells isolated from the CNS of naive (left) and EAE (right) mice, presented as a heatmap of CD157 expression.
- Figure 2C CD157 expression presented from CDl lb + CD45 low (microglia), CDl lb CD45 + (lymphocytes) and CDl lb + CD45 hlgh (monocytes) cells, compared to isotype control.
- FIGs. 3A-I illustrate that CD157 expression is a marker for infiltrating monocytes.
- Figure 3A Fate mapping model schematic illustration.
- Figure 3B blood analysis of tdTomato expression after TMX treatment and following 7 weeks. Presented as percentage of CD45 + cells.
- Figure 3C Flow cytometry analysis of cells isolated from the CNS of naive and EAE mice.
- Figure 3E Schematic illustration of bone marrow transplantation model.
- FIG. 3F eYFP expression in the blood of bone marrow-transplanted mice, as assessed by flow cytometry.
- Figure 3G Flow cytometry assessment of CDl lb + eYFP + cells to the CNS of naive and EAE transplanted mice.
- FIGs. 4A-I illustrate that targeting CD157 + monocytes ameliorates EAE development.
- Figure 4A complement-dependent cytotoxicity (CDC) and
- Figure 4C Administration of 100 pg anti-CD157 antibody in-vivo significantly depletes CCR2 + Ly6C + circulating monocytes.
- Figure 4H Histopathological analysis of spinal cords isolated from EAE mice treated with anti-CD157 mAbs or isotype control.
- FIGs. 5A-G illustrate that CD157 + monocytes promote disease progression in the progressive phase of EAE.
- Figure 5A clinical score of NOD-C57B16 Fl hybrid EAE mice.
- Figure 5B Flow analysis of CD1 lb + CD157 _ and CD1 lb + CD157 + cells isolated from the CNS of naive and EAE NOD-C57B16 Fl mice
- Figure 5C CD157 expression in the CNS of naive and EAE NOD-C57B16 Fl mice, assessed by flow cytometry, presented as heatmap for CD157 expression.
- Figures 5D-E Administration of 50 pg anti-CD157 mAbs, every other day, ameliorates disease progression in NOD-C57B16 Fl EAE.
- FIG. 5F Histopathological analysis of spinal cords isolated from EAE NOD-C57B16 Fl mice treated with anti-CD157 mAbs or isotype control. Demyelination was assessed using Luxol Fast Blue staining (top) and cell infiltration by H&E (bottom)
- the present invention in some embodiments thereof, relates to methods of treating and diagnosing diseases and conditions of the central nervous system (CNS) by determining the expression level of CD157 on CNS infiltrating cells.
- CNS central nervous system
- CD157 is expressed in human and murine peripheral tissue, prevalently by myeloid cells. CD157 is not expressed in the healthy murine or human CNS.
- CD 157 is a novel marker which can be used to identify infiltrating monocytes to the CNS and is not expressed by resident microglial cells (see Example 1 of the Examples section which follows).
- CD157-expressing monocytes in the CNS are CDl lb + CD45 ++ cells, these cells also typically express CCR2 and/or Ly6C (see Example 2 of the Examples section which follows).
- CD157 was found to be a marker for infiltrating monocytes in progressive MS (see Example 5 of the Examples section which follows). Taken together, CD157 was established as a novel marker which can be used to identify inflammatory monocytes in the CNS, and which can be used as a therapeutic target for patients with MS and other neuroinflammatory diseases and disorders.
- a method of treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising administering to the subject a therapeutically effective amount of an agent capable of binding CD157 on CD157-expressing cells of the CNS, the agent capable of mediating a therapeutic effect, thereby treating the inflammatory disease or disorder of the CNS in the subject.
- CNS central nervous system
- CNS central nervous system
- the term “treating” includes abrogating, substantially inhibiting, slowing or reversing the progression of a pathology (e.g., an inflammatory disease or disorder of the central nervous system (CNS)), causing the reduction, remission, or regression of a pathology, substantially ameliorating clinical or aesthetical symptoms of a pathology or substantially preventing the appearance of clinical or aesthetical symptoms of a pathology.
- a pathology e.g., an inflammatory disease or disorder of the central nervous system (CNS)
- CNS central nervous system
- the term “subject” includes mammals, preferably human beings at any age which suffer from the pathology.
- an inflammatory disease or disorder of the central nervous system refers to an inflammatory response within the brain or spinal cord. Typically such an inflammation is mediated by the production of cytokines, chemokines, reactive oxygen species, and secondary messengers produced by resident CNS glia, and peripherally derived immune cells, specifically monocytes.
- the inflammatory disease or disorder of the CNS is associated with local accumulation of fluids, plasma proteins, and white blood cells.
- the inflammatory disease or disorder of the CNS may be initiated by physical injury, trauma, infection, stress or a local immune response (e.g., in the CNS).
- Inflammation is an aspect of many diseases and disorders of the CNS, including but not limited to, physical injuries or traumas, diseases related to immune disorders, pathogens (e.g. viral and bacterial infections), damaged cells, or irritants, and includes secretion of cytokines and more particularly of pro-inflammatory cytokines, i.e. cytokines which are produced predominantly by activated immune cells (e.g. microglia) but also by other cells in the CNS (e.g. astrocytes, endothelial cells).
- pro-inflammatory cytokines include, but are not limited to, IL-ip, IL-6, CXCL1, CXCL2 and TNF-a.
- pro-inflammatory cytokines are generally involved in the amplification of the inflammatory reaction, such as in activation of endothelial cells, platelet deposition, and tissue edema (e.g. in acute inflammation), or in sustained activation of microglia cells and recruitment of other immune cells into the brain (e.g. in chronic inflammation).
- the inflammation can be a sterile inflammation (i.e., as a result of an injury, trauma or stroke) or a pathogenic inflammation (i.e., caused by a pathogen such as a bacteria, virus or fungus).
- a sterile inflammation i.e., as a result of an injury, trauma or stroke
- a pathogenic inflammation i.e., caused by a pathogen such as a bacteria, virus or fungus
- the inflammatory disease or disorder of the CNS is selected from the group consisting of Multiple Sclerosis (MS), Acute disseminated encephalomyelitis (ADEM), Acute Optic Neuritis (AON), Transverse Myelitis, Neuromyelitis Optica (NMO), Autoimmune encephalitis, Viral encephalitis, Rasmussen's syndrome, Acute necrotizing encephalopathy of childhood (ANEC), Opsoclonus-myoclonus ataxia syndrome (OMAS), Parkinson's disease (PD), Alzheimer's disease (AD), Niemann's disease, Huntington's disease, Creutzfeldt- Jakob disease, Traumatic brain injury, Stroke, Spinal cord injury, neuroblastoma, Amyotrophic lateral sclerosis (ALS) and Spinal Muscular Atrophy (SMA).
- MS Multiple Sclerosis
- AON Acute Optic Neuritis
- NMO Neuromyelitis Optica
- the inflammatory disease or disorder of the CNS is Multiple Sclerosis (MS).
- MS Multiple Sclerosis
- MS multiple sclerosis
- CNS central nervous system
- MRI brain magnetic resonance imaging
- the pathobiology of MS includes inflammatory and neurodegenerative mechanisms that affect both white and gray matter.
- the main pathologic findings in MS are the presence of infiltrating mononuclear cells, predominantly T lymphocytes and macrophages, that surpass the blood brain barrier and induce an active inflammation within the brain and spinal cord, attacking the myelin and resulting in gliotic scars and axonal loss.
- These inflammatory (acute and chronic) processes can be visualized by brain and spinal cord magnetic resonance imaging (MRI) as hyperintense T2 or hypointense T1 lesions.
- MRI brain and spinal cord magnetic resonance imaging
- the disease course is relapsingremitting definite MS (RRMS), which is characterized by attacks during which new neurological symptoms and signs appear, or existing neurological symptoms and signs worsen.
- RRMS relapsingremitting definite MS
- the disease has a primary progressive course, characterized by gradual onset of neurological symptoms that progress over time.
- the disease has a secondary progressive course, i.e., it is first characterized by relapses and remission and then gradually progresses.
- DMTs MS disease-modifying treatments
- Various immunomodulatory drugs have been shown to reduce the number and severity of acute attacks, and thereby to decrease the accumulation of neurological disability.
- MS disease-modifying treatments DMTs
- Available DMTs differ with respect to the route and frequency of administration, tolerability and likelihood of treatment adherence, common adverse effects, risk of major toxicity, and pregnancy-related risks. This of utmost importance to understand the benefit-risk profiles of these therapies to establish logical and safe treatment plans for MS patients.
- the Multiple Sclerosis is an advanced or progressive multiple sclerosis.
- the Multiple Sclerosis is an acute multiple sclerosis.
- the inflammatory disease or disorder of the CNS is a cancerous disease.
- the cancerous disease is selected from the group consisting of Acoustic neuroma, Astrocytoma, Choroid plexus carcinoma, Craniopharyngioma, Embryonal tumor, Ependymoma, Glioblastoma, Glioma, Medulloblastoma, Meningioma, Oligodendroglioma, Pediatric brain tumor, Pineoblastoma, Pituitary tumor and Brain metastasis.
- CD157 also referred to as Bone Marrow Stromal Cell Antigen 1 (BST1), refers to the gene encoding the CD157 molecule having the gene symbol “BST1”.
- An exemplary CD157 transcript is provided in GenBank Accession No. NM_004334.3 (SEQ ID NO: 19).
- An exemplary CD157 protein is provided in GenBank Accession No. NP_004325.2 (SEQ ID NO: 20).
- CD157-expressing cells refers to cells having CD157 protein on the cell surface which can be detected by cell surface protein detection assays, such as but not limited to, binding assays, flow cytometry (e.g. FACS), Enzyme- Linked Immunosorbent Assay (ELISA), and Western Blot.
- cell surface protein detection assays such as but not limited to, binding assays, flow cytometry (e.g. FACS), Enzyme- Linked Immunosorbent Assay (ELISA), and Western Blot.
- FACS flow cytometry
- ELISA Enzyme- Linked Immunosorbent Assay
- CD157-expressing cells comprise myeloid cells.
- CD157-expressing cells comprise monocytes.
- CD157-expressing cells comprise granulocytes.
- CD157-expressing cells comprise CNS- infiltrating monocytes.
- CD157-expressing cells comprise CNS- infiltrating granulocytes.
- CNS-infiltrating monocytes refers to monocytes which are capable of crossing the blood brain barrier (BBB) and are present in the tissue affected by the inflammatory disease or disorder of the CNS.
- BBB blood brain barrier
- CNS-infiltrating granulocytes refers to granulocytes which are capable of crossing the blood brain barrier (BBB) and are present in the tissue affected by the inflammatory disease or disorder of the CNS.
- BBB blood brain barrier
- the CNS-infiltrating monocytes express CD157 and in addition at least one of the CD1 lb, CD45, CX3CR1, CCR2 and/or CD14 markers.
- the CNS-infiltrating monocytes express at least one of the CDl lb, CD45, CCR2 and Ly6c markers.
- CDl lb refers to the product (mRNA or protein) of the integrin subunit alpha M gene (gene symbol: fTGAM).
- CD45 refers to the product (mRNA or protein) of the protein tyrosine phosphatase receptor type C gene (gene symbol: PTPRC).
- CCR2 refers to the product (mRNA or protein) of the C-C motif chemokine receptor 2 gene (gene symbol: CCR2).
- CX3CR1 refers to the product (mRNA or protein) of the C-C motif chemokine receptor 2 gene (gene symbol: Cx3crl).
- Ly6c refers to the product (mRNA or protein) of the lymphocyte antigen 6 complex, locus Cl (mouse gene symbol: Ly6cl).
- the equivalent marker in human is the combination of CD14 and CD16 markers (e.g., CD14 + CD16 + cells).
- cells which express the above described marker(s) are often referred to as being positive (+) for expression of these markers, and can be identified, e.g., as having the expression signature
- the CNS-infiltrating monocytes have a CD157 + CD45 + CCR2 + Ly6c + or CD157 + CD45 + CDl lb + signature.
- the CNS-infiltrating monocytes have a CD157 + CD14 + CD16- or CD157 + CD14 + CD16 + or a CD157 + CD45 + CDl lb + or CD157 + CX3CR1 + or a CD157 + CD45 + CCR2 + signature.
- agent capable of binding CD 157 refers to a molecule that is capable of binding to CD 157 on the cell surface under physiological conditions.
- the agent is capable of mediating a therapeutic effect. It should be noted that the agent can either directly mediate the therapeutic effect, i.e., treat the inflammatory disease or disorder of the CNS, or it can indirectly mediate the therapeutic effect by being a targeting moiety for a therapeutic moiety capable of treating the inflammatory disease or disorder of the CNS.
- the agent capable of binding CD 157 is an antibody or fragment thereof.
- the antibody is capable of binding CD157 on CD157-expressing cells of the CNS.
- antibody as used in this invention includes intact molecules as well as functional fragments and/or mimetics thereof (that are capable of binding to an epitope of an antigen).
- epitopic determinants refers to any antigenic determinant on an antigen to which the paratope of an antibody binds.
- Epitopic determinants usually consist of chemically active surface groupings of molecules such as amino acids or carbohydrate side chains and usually have specific three dimensional structural characteristics, as well as specific charge characteristics.
- the antibody fragments include, but are not limited to, single chain, Fab, Fab’ and F(ab')2 fragments, Fd, Fcab, Fv, dsFv, scFvs, diabodies, minibodies, nanobodies, Fab expression library or single domain molecules such as VH and VE that are capable of binding to an epitope of the antigen in an HEA restricted manner.
- Suitable antibody fragments for practicing some embodiments of the invention include a complementarity-determining region (CDR) of an immunoglobulin light chain (referred to herein as “light chain”), a complementarity-determining region of an immunoglobulin heavy chain (referred to herein as “heavy chain”), a variable region of a light chain, a variable region of a heavy chain, a light chain, a heavy chain, an Fd fragment, and antibody fragments comprising essentially whole variable regions of both light and heavy chains such as an Fv, a single chain Fv (scFv), a disulfide-stabilized Fv (dsFv), an Fab, an Fab’, and an F(ab’)2, or antibody fragments comprising the Fc region of an antibody .
- CDR complementarity-determining region
- light chain referred to herein as “light chain”
- heavy chain a complementarity-determining region of an immunoglobulin heavy chain
- variable region of a light chain a variable region of a heavy
- CDR complementarity-determining region
- VH VH
- CDR H2 or H2 CDR H3 or H3
- VL VL
- the identity of the amino acid residues in a particular antibody that make up a variable region or a CDR can be determined using methods well known in the art and include methods such as sequence variability as defined by Kabat et al. (See, e.g., Kabat et al., 1992, Sequences of Proteins of Immunological Interest, 5th ed., Public Health Service, NIH, Washington D.C.), location of the structural loop regions as defined by Chothia et al. (see, e.g., Chothia et al., Nature 342:877-883, 1989.), a compromise between Kabat and Chothia using Oxford Molecular's AbM antibody modeling software (now Accelrys®, see, Martin et al., 1989, Proc.
- variable regions and CDRs may refer to variable regions and CDRs defined by any approach known in the art, including combinations of approaches.
- Fv defined as a genetically engineered fragment consisting of the variable region of the light chain (VL) and the variable region of the heavy chain (VH) expressed as two chains ;
- scFv single chain Fv
- dsFv disulfide-stabilized Fv
- Fab a fragment of an antibody molecule containing a monovalent antigen-binding portion of an antibody molecule which can be obtained by treating whole antibody with the enzyme papain to yield the intact light chain and the Fd fragment of the heavy chain which consists of the variable and CHI domains thereof ;
- Fab a fragment of an antibody molecule containing a monovalent antigen-binding portion of an antibody molecule which can be obtained by treating whole antibody with the enzyme pepsin, followed by reduction (two Fab’ fragments are obtained per antibody molecule) ;
- F(ab’)2 a fragment of an antibody molecule containing a monovalent antigen-binding portion of an antibody molecule which can be obtained by treating whole antibody with the enzyme pepsin (i.e., a dimer of Fab’ fragments held together by two disulfide bonds);
- Single domain antibodies or nanobodies are composed of a single VH or VL domains which exhibit sufficient affinity to the antigen
- Fcab a fragment of an antibody molecule containing the Fc portion of an antibody developed as an antigen-binding domain by introducing antigen-binding ability into the Fc region of the antibody.
- Fv fragments comprise an association of VH and VL chains. This association may be noncovalent, as described in Inbar et al. [Proc. Nafl Acad. Sci. USA 69:2659-62 (19720]. Alternatively, the variable chains can be linked by an intermolecular disulfide bond or cross-linked by chemicals such as glutaraldehyde. Preferably, the Fv fragments comprise VH and VL chains connected by a peptide linker.
- sFv single-chain antigen binding proteins
- the structural gene is inserted into an expression vector, which is subsequently introduced into a host cell such as E. coli.
- the recombinant host cells synthesize a single polypeptide chain with a linker peptide bridging the two V domains.
- Methods for producing sFvs are described, for example, by [Whitlow and Filpula, Methods 2: 97-105 (1991); Bird et al., Science 242:423-426 (1988); Pack et al., Bio/Technology 11: 1271-77 (1993); and U.S. Pat. No. 4,946,778, which is hereby incorporated by reference in its entirety.
- an antibody fragment is a peptide coding for a single complementaritydetermining region (CDR).
- CDR peptides (“minimal recognition units") can be obtained by constructing genes encoding the CDR of an antibody of interest. Such genes are prepared, for example, by using the polymerase chain reaction to synthesize the variable region from RNA of antibody-producing cells. See, for example, Larrick and Fry [Methods, 2: 106-10 (1991)].
- the antibody fragment may comprise a Fc region of an antibody termed “Fcab”.
- Such antibody fragments typically comprise the CH2-CH3 domains of an antibody.
- Fcabs are engineering to comprise at least one modification in a structural loop region of the antibody, i.e.
- Such antibody fragments can be generated, for example, as follows: providing a nucleic acid encoding an antibody comprising at least one structural loop region (e.g. Fc region), modifying at least one nucleotide residue of the at least one structural loop regions, transferring the modified nucleic acid in an expression system, expressing the modified antibody, contacting the expressed modified antibody with an epitope, and determining whether the modified antibody binds to the epitope.
- a nucleic acid encoding an antibody comprising at least one structural loop region (e.g. Fc region), modifying at least one nucleotide residue of the at least one structural loop regions, transferring the modified nucleic acid in an expression system, expressing the modified antibody, contacting the expressed modified antibody with an epitope, and determining whether the modified antibody binds to the epitope.
- Humanized forms of non-human (e.g., murine) antibodies are chimeric molecules of immunoglobulins, immunoglobulin chains or fragments thereof (such as Fv, Fab, Fab', F(ab').sub.2 or other antigen-binding subsequences of antibodies) which contain minimal sequence derived from non-human immunoglobulin.
- Humanized antibodies include human immunoglobulins (recipient antibody) in which residues form a complementary determining region (CDR) of the recipient are replaced by residues from a CDR of a non-human species (donor antibody) such as mouse, rat or rabbit having the desired specificity, affinity and capacity.
- CDR complementary determining region
- donor antibody such as mouse, rat or rabbit having the desired specificity, affinity and capacity.
- Fv framework residues of the human immunoglobulin are replaced by corresponding non-human residues.
- Humanized antibodies may also comprise residues which are found neither in the recipient antibody nor in the imported CDR or framework sequences.
- the humanized antibody will comprise substantially all of at least one, and typically two, variable domains, in which all or substantially all of the CDR regions correspond to those of a non-human immunoglobulin and all or substantially all of the FR regions are those of a human immunoglobulin consensus sequence.
- the humanized antibody optimally also will comprise at least a portion of an immunoglobulin constant region (Fc), typically that of a human immunoglobulin [Jones et al., Nature, 321:522-525 (1986); Riechmann et al., Nature, 332:323- 329 (1988); and Presta, Curr. Op. Struct. Biol., 2:593-596 (1992)].
- Fc immunoglobulin constant region
- a humanized antibody has one or more amino acid residues introduced into it from a source which is non-human. These non-human amino acid residues are often referred to as import residues, which are typically taken from an import variable domain. Humanization can be essentially performed following the method of Winter and co-workers [Jones et al., Nature, 321:522-525 (1986); Riechmann et al., Nature 332:323-327 (1988); Verhoeyen et al., Science, 239: 1534-1536 (1988)], by substituting rodent CDRs or CDR sequences for the corresponding sequences of a human antibody.
- humanized antibodies are chimeric antibodies (U.S. Pat. No. 4,816,567), wherein substantially less than an intact human variable domain has been substituted by the corresponding sequence from a non- human species.
- humanized antibodies are typically human antibodies in which some CDR residues and possibly some FR residues are substituted by residues from analogous sites in rodent antibodies.
- Human antibodies can also be produced using various techniques known in the art, including phage display libraries [Hoogenboom and Winter, J. Mol. Biol., 227:381 (1991); Marks et al., J. Mol. Biol., 222:581 (1991)].
- the techniques of Cole et al. and Boerner et al. are also available for the preparation of human monoclonal antibodies (Cole et al., Monoclonal Antibodies and Cancer Therapy, Alan R. Liss, p. 77 (1985) and Boerner et al., J. Immunol., 147(l):86-95 (1991)].
- human antibodies can be made by introduction of human immunoglobulin loci into transgenic animals, e.g., mice in which the endogenous immunoglobulin genes have been partially or completely inactivated. Upon challenge, human antibody production is observed, which closely resembles that seen in humans in all respects, including gene rearrangement, assembly, and antibody repertoire. This approach is described, for example, in U.S. Pat. Nos.
- Antibody mimetics are small proteins (usually less than 20 kDa) that mimic CDR display within antibody Fab fragments but lack the Fc. Antibody mimetics can be obtained using methods like phage display. To increase their in vivo stability antibody mimetics can be conjugated to specific sequences by chemical conjugation or genetic fusion (reviewed in Angeline N Ta & Brian R McNaughton. 2017. FUTURE MEDICINAL CHEMISTRY Vol. 9, NO. 12; “Antibody and antibody mimetic immunotherapeutics”; which is fully incorporated herein by reference in its entirety)
- antibodies may be tested for activity, for example via ELISA.
- the antibody comprises an anti-CD157 monoclonal antibody or fragment thereof.
- the agent capable of binding CD 157 on the CD157-expressing cells comprises an aptamer.
- aptamer refers to double stranded or single stranded RNA molecule that binds to specific molecular target, such as a protein.
- Various methods are known in the art which can be used to design protein specific aptamers. The skilled artisan can employ SELEX (Systematic Evolution of Ligands by Exponential Enrichment) for efficient selection as described in Stoltenburg R, Reinemann C, and Strehlitz B (Biomolecular engineering (2007) 24(4):381-403).
- the agent capable of binding CD 157 on the CD157-expressing cells e.g., the antibody or fragment thereof
- a therapeutic moiety an immune- conjugate molecule, e.g., an antibody drug conjugate
- CNS central nervous system
- the immune-conjugate molecule can be an isolated molecule such as a soluble and/or a synthetic molecule.
- the therapeutic moiety can be an agent capable of treating an inflammatory disease or disorder of the central nervous system, for example, a cytotoxic moiety, a toxic moiety, a polypeptide, a cytokine moiety or a second antibody moiety comprising a different specificity to the antibodies of the invention.
- a cytotoxic moiety for example, a cytotoxic moiety, a toxic moiety, a polypeptide, a cytokine moiety or a second antibody moiety comprising a different specificity to the antibodies of the invention.
- the functional moiety e.g., the therapeutic moiety of some embodiments of the invention
- the immune-conjugate may be produced by recombinant means.
- the nucleic acid sequence encoding the therapeutic polypeptide may be ligated inframe with the nucleic acid sequence encoding the antibody of the invention and be expressed in a host cell to produce a recombinant conjugated antibody.
- the functional moiety may be chemically synthesized by, for example, the stepwise addition of one or more amino acid residues in defined order such as solid phase peptide synthetic techniques.
- a functional moiety may also be attached to the antibody of the invention using standard chemical synthesis techniques widely practiced in the art [see e.g., hypertexttransferprotocol://worldwideweb (dot) chemistry (dot) org/portal/Chemistry)], such as using any suitable chemical linkage, director indirect, as via a peptide bond (when the functional moiety is a polypeptide), or via covalent bonding to an intervening linker element, such as a linker peptide or other chemical moiety, such as an organic polymer.
- standard chemical synthesis techniques widely practiced in the art [see e.g., hypertexttransferprotocol://worldwideweb (dot) chemistry (dot) org/portal/Chemistry)], such as using any suitable chemical linkage, director indirect, as via a peptide bond (when the functional moiety is a polypeptide), or via covalent bonding to an intervening linker element, such as a linker peptide or other chemical moiety,
- Chimeric peptides may be linked via bonding at the carboxy (C) or amino (N) termini of the peptides, or via bonding to internal chemical groups such as straight, branched or cyclic side chains, internal carbon or nitrogen atoms, and the like.
- the therapeutic moiety is connected to the agent (e.g., antibody) via a cleavable linker.
- a cleavable linker examples include, but are not limited to, an acid- labile linker, a protease cleavable linker, photoremovable linker, or a linker that is connected by a disulphide linkage.
- cleavable linkers can be released in an inflammatory site, or in the region of a tumor, or can be released in a more acidic environment.
- the therapeutic moiety is connected to the agent (e.g., antibody) via a non-cleavable linker.
- Exemplary methods for conjugating peptide moieties (e.g., a therapeutic or detectable moiety) to the antibody of some embodiments of the invention include, but are not limited to, SPDP conjugation (e.g., as described in Cumber et al. (1985, Methods of Enzymology 112: 207- 224); Glutaraldehyde conjugation (e.g., as described in G.T. Hermanson (1996, "Antibody Modification and Conjugation, in Bioconjugate Techniques, Academic Press, San Diego); and Carbodiimide conjugation (e.g., as described in J. March, Advanced Organic Chemistry: Reaction's, Mechanism, and Structure, pp.
- SPDP conjugation e.g., as described in Cumber et al. (1985, Methods of Enzymology 112: 207- 224
- Glutaraldehyde conjugation e.g., as described in G.T. Hermanson (1996, "Antibody Modification and Con
- the therapeutic moiety is an anti- inflammatory cytokine.
- Non-limiting examples of suitable an anti-inflammatory cytokines include, but are not limited to anti-inflammatory interleukins include interleukin (IL)-1 receptor antagonist, IL-4, IL- 6, IL- 13, IL- 19, IL-27 and IL-35, and TGF-P (transforming growth factor beta).
- IL interleukin
- IL-4 interleukin-4
- IL- 6 IL- 13, IL- 19, IL-27 and IL-35
- TGF-P transforming growth factor beta
- the therapeutic moiety is an agent capable of downregulating an expression of a protein upregulated in the neuroinflammatory disease or disorder.
- Non-limiting examples of proteins which are upregulated in the neuroinflammatory disease or disorder include, but are not limited to IL-ip (interleukin- 1 -beta), IL- 12, IL-6, IL-23, TNF-a (Tumor Necrosis Factor alpha), colony stimulating factor 2 (CSF2; also known as GM-CSF), Interferons, nitric oxide synthase 2 (NOS2; also known as NOS; INOS; NOS2A; HEP-NOS).
- IL-ip interleukin- 1 -beta
- IL-6 interleukin-6
- IL-23 TNF-a (Tumor Necrosis Factor alpha)
- CSF2 colony stimulating factor 2
- NOS2 Interferons
- NOS2 nitric oxide synthase 2
- INOS NOS2A
- HEP-NOS nitric oxide synthase 2
- the therapeutic moiety is a chemotherapeutic agent.
- chemotherapeutic agents depends on the type of the neuroinflammatory disease or disorder of the CNS.
- chemotherapeutic agents which can be used along with the method of some embodiments of the invention: Aldesleukin; Alemtuzumab; alitretinoin; allopurinol; altretamine; amifostine; amifostine; anastrozole; anastrozole; anastrozole; arsenic trioxide; Asparaginase; BCG Live; bexarotene capsules; bexarotene gel; bleomycin; bleomycin; busulfan intravenous; busulfan oral; calusterone; capecitabine; capecitabine; carboplatin; carboplatin; carmustine; carmustine with Polifeprosan 20 Implant; celecoxib; chlorambucil; cisplatin; cladribine; cyclophosphamide; cytarabine; cytarabine liposomal; dacarbazine; dactinomycin, actinomycin
- the agent capable of treating the inflammatory disease or disorder of the CNS is selected from the group consisting of an antiinflammatory drug, an immunosuppressant drug, an immunomodulatory drug, a neuroprotective drug, a cognitive enhancing drug, a remyelination agent and an antitumor agent.
- Non-limiting examples of anti-inflammatory drugs which can be used along with the method of some embodiments of the invention include Alclofenac; Alclometasone Dipropionate; Algestone Acetonide; Alpha Amylase; Amcinafal; Amcinafide; Amfenac Sodium; Amiprilose Hydrochloride; Anakinra; Anirolac; Anitrazafen; Apazone; Balsalazide Disodium; Bendazac; Benoxaprofen; Benzydamine Hydrochloride; Bromelains; Broperamole; Budesonide; Carprofen; Cicloprofen; Cintazone; Cliprofen; Clobetasol Propionate; Clobetasone Butyrate; Clopirac; Cloticasone Propionate; Cormethasone Acetate; Cortodoxone; Deflazacort; Desonide; Desoximetasone; Dexamethasone Dipropionate; Diclofenac Potassium; Diclofe
- Non-limiting examples of immunosuppressant drug which can be used along with the method of some embodiments of the invention include Corticosteroids, such as prednisone; Biologies such as adalimumab (Humira®) and infliximab (Remicade®); Calcineurin inhibitors such as tacrolimus (Envarsus XR® or Protopic) and cyclosporine (Gengraf®, Neoral® or Sandimmune®); Inosine monophosphate dehydrogenase (IMDH) inhibitors such as mycophenolate mofetil (CellCept®); Janus kinase inhibitors such as tofacitinib (Xeljanz®); Mechanistic target ofrapamycin (mTOR) inhibitors such as sirolimus (Rapamune®); Monoclonal antibodies such as basiliximab (Simulect®); and FK506 (Tacrolimus).
- Corticosteroids such as prednisone
- Non-limiting examples of suitable immunomodulatory drugs which can be used along with the method of some embodiments of the invention, include Thalidomide (Thalomid), lenalidomide (Revlimid), and pomalidomide (Pomalyst).
- Non-limiting examples of neuroprotective drugs which can be used along with the method of some embodiments of the invention include Glutamate blockers such as polyarginine R18 and NA-1 (TAT-NR2B9c); Glutamate blockers/NMDA channels blocker such as Magnesium sulfate (MgSO4); Statins such as Atorvastatin, Mevastatin, Rosuvastatin and Simvastatin; Hormones such as Melatonin; Hematopoietic growth factors such as Erythropoietin; Free Radical Scavengers such as NXY-059, PEG-SOD, Tempol, hydroxystilbene oxyresveratrol; Mucolytic agents such as NAC; Blockers of beta-adrenergic receptors such as Esmolol, propranolol, labetalol, metoprolol, atenolol or carvedilol; COX-2 inhibitors such as Flavocoxid, NS-398, Valde
- Non-limiting examples of cognitive enhancing drugs which can be used along with the method of some embodiments of the invention include, donepezil (Aricept®),rivastigmine tartrate (Exelon®), galantamine HBr (Reminyl®), memantine (Namenda®); and modafinil (Provigil®).
- Non-limiting examples of remyelination agents which can be used along with the method of some embodiments of the invention include, antagonists of M1/M3 muscarinic acetylcholine receptors with subsequent stimulation of oligodendrocyte differentiation such as Benztropine; Activators of eIF2, TX/RXR, and cholesterol signaling such as Miconazole and clobetasol; agents that decreases oxidative stress and promote oligodendrocyte maturation and myelin synthesis such as Olesoxime; agents that stimulate proliferation and maturation of oligodendrocytes, increase neurotrophic factors, and inhibit activated microglia, astrocytes, and T lymphocytes such as Quetiapine fumarate; and rHIgM22 which binds to the surface of oligodendrocytes and promote myelin repair (Danielle E. Harlow et al., Front Neurol. 2015; 6: 257).
- the antitumor agent which can be used along with the method of some embodiments of the invention can be for example a chemotherapeutic agent, a radiation therapy agent, and/or an anti-angiogenesis agent (e.g., anti-VEGF antibody).
- a chemotherapeutic agent e.g., a radiation therapy agent
- an anti-angiogenesis agent e.g., anti-VEGF antibody
- the antitumor agent is a localized cancer targeting therapy, such as radiotherapy via a specialized bead.
- the agent is a small molecule.
- the small molecule is an anti-MS therapeutic agent.
- the anti-MS therapeutic agent is selected from the group consisting of a beta interferon, glatiramer (Copaxone®), fingolimod (Gilenya®), natalizumab (Tysabri®), mitoxantrone (Novantrone®), teriflunimide (Aubagio®), BG-12 (Tecfidera®), alemtuzumab (Eemtrada®), daclizumab (Zinbryta®), ocrelizumab (Ocrevus®), amantadine (Symmetrel®), amitriptyline (Elavil®), nortriptyline, modafinil (Provigil®), and dalfampridine (Ampyra®).
- an article of manufacture comprising an agent capable of binding CD157 on CD157-expressing cells of the CNS, and an additional agent for the treatment of an inflammatory disease or disorder of the CNS, being packaged in a packaging material and identified in print, in or on the packaging material for use in the treatment of the inflammatory disease or disorder of the CNS.
- an article of manufacture comprising an anti-CD157 antibody, and an additional agent for the treatment of an inflammatory disease or disorder of the CNS, being packaged in a packaging material and identified in print, in or on the packaging material for use in the treatment of the inflammatory disease or disorder of the CNS.
- the additional agent for the treatment of an inflammatory disease or disorder of the CNS is selected from the group consisting of an antiinflammatory drug, an immunosuppressant drug, an immunomodulatory drug, a neuroprotective drug, a cognitive enhancing drug, a remyelination agent and an antitumor agent.
- the additional agent for the treatment of an inflammatory disease or disorder of the CNS is an anti-MS therapeutic agent.
- the agent capable of binding CD 157 on CD157-expressing cells of the CNS and the additional agent for the treatment of an inflammatory disease or disorder of the CNS are comprised in a single formulation.
- the anti-CD157 antibody and the additional agent for the treatment of an inflammatory disease or disorder of the CNS are comprised in a single formulation.
- the agent capable of binding CD 157 on CD157-expressing cells of the CNS and the additional agent for the treatment of an inflammatory disease or disorder of the CNS are comprised in separate formulations.
- the anti-CD157 antibody and the additional agent for the treatment of an inflammatory disease or disorder of the CNS are comprised in separate formulations.
- a method of treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising administering to or expressing in a CD157-expressing cell of the CNS of the subject an exogenous polynucleotide encoding an expression product capable of alleviating at least one symptom of the inflammatory disease or disorder, wherein the exogenous polynucleotide is under the transcriptional control of a cis acting regulatory element active specifically in a CD157-expressing cell, thereby treating the inflammatory disease or disorder of the CNS in the subject.
- CNS central nervous system
- an exogenous polynucleotide encoding an expression product capable of alleviating at least one symptom of an inflammatory disease or disorder, wherein the exogenous polynucleotide is under the transcriptional control of a cis acting regulatory element specifically active in a CD 157- expressing cell, for use in treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof.
- CNS central nervous system
- exogenous refers to a heterologous nucleic acid sequence which may not be naturally expressed within the subject (e.g., a nucleic acid sequence from a different organism, e.g., species) or which overexpression in the subject is desired.
- the cis-acting regulatory element is a promoter which is specifically active in CD157-expressing cells such as the bstl promoter.
- the cis-acting regulatory element comprises a bstl promoter.
- the bstl promoter is as set forth by SEQ ID NO: 37.
- the bstl promoter is as set forth by SEQ ID NO: 38.
- the expression product is an mRNA or a protein capable of alleviating at least one symptom of the inflammatory disease or disorder.
- the expression product comprises a protein
- the protein is selected from the group consisting of an anti-inflammatory protein, a neuronal survival factor, and a factor supporting remyelination.
- Non-limiting examples of suitable anti-inflammatory proteins include anti-inflammatory interleukins such as interleukin (IL)- 1 receptor antagonist, IL-4, IL-6, IL- 13, IL- 19, IL-27 and IL- 35 and transforming growth factor beta (TGFP).
- IL interleukin
- IL-4 interleukin
- IL-6 IL- 13
- IL- 19 IL-27 and IL- 35
- TGFP transforming growth factor beta
- neuronal survival factors include neuronal growth factor (NGF), neurotrophic factor (BDNF), neurotrophin-3 (NT-3), neurotrophin-4 (NT-4), TGFP, Insulin-like growth factor-I (IGF-I), Ciliary neurotrophic factor (CNTF), Connective tissue growth factor (CTGF).
- NGF neuronal growth factor
- BDNF neurotrophic factor
- NT-3 neurotrophin-3
- NT-4 neurotrophin-4
- TGFP TGFP
- IGF-I Insulin-like growth factor-I
- CNTF Ciliary neurotrophic factor
- CTGF Connective tissue growth factor
- Non-limiting examples of suitable factors supporting remyelination include brain derived neurotrophic factor (BDNF), ciliary neurotrophic factor (CNTF), nerve growth factor (NGF), Activin A (INHBA), Galectin 3, Leukemia Inhibitory Factor (UF), Biotin, Leucine-rich repeat and immunoglobulin domain- containing protein (Lingo- 1) inhibiting/neutralizing moieties, and Fibroblast growth factor 2 (FGF2).
- the exogenous polynucleotide is encapsulated in a particle.
- the particle is an Adeno-associated virus (AAV), Lentivirus (LV), adenovirus (Ad), retrovirus, or herpes simplex virus (HSV) particles.
- AAV Adeno-associated virus
- LV Lentivirus
- Ad adenovirus
- HSV herpes simplex virus
- a chimeric polynucleotide comprising a nucleic acid sequence encoding an expression product capable of alleviating at least one symptom of an inflammatory disease or disorder and another nucleic acid sequence comprising a cis acting regulatory element specifically active in a CD157-expressing cell.
- chimeric polynucleotide refers to a polynucleotide which comprises at least two distinct nucleic acid sequences, wherein the combination of same in the chimeric polynucleotide is not found in nature.
- polynucleotide refers to a single or double stranded nucleic acid sequence which is isolated and provided in the form of an RNA sequence, a complementary polynucleotide sequence (cDNA), a genomic polynucleotide sequence and/or a composite polynucleotide sequences (e.g., a combination of the above).
- the chimeric polynucleotide of some embodiments of the invention is an isolated polynucleotide.
- isolated refers to at least partially separated from the natural environment e.g., from a human cell.
- the cis acting regulatory element is heterologous to the nucleic acid sequence encoding the expression product capable of alleviating at least one symptom of an inflammatory disease or disorder.
- the nucleic acid sequence encoding the expression product capable of alleviating at least one symptom of an inflammatory disease or disorder is under the transcriptional regulation of the cis-acting regulatory element specifically active in a CD157-expressing cell.
- the cis acting regulatory element is a promoter.
- the promoter comprises a bstl promoter.
- composition of matter comprising the chimeric polynucleotide of some embodiments of the invention, and a particle encapsulating or attached to the chimeric polynucleotide.
- the particle of the composition of matter is a viral particle.
- Non-limiting examples of viral particles which can be used include Adeno-associated virus (AAV), Lentivirus (LV), adenovirus (Ad), retrovirus, or herpes simplex virus (HSV) particles.
- AAV Adeno-associated virus
- LV Lentivirus
- Ad adenovirus
- HSV herpes simplex virus
- a method of diagnosing an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising analyzing a level of CD157-expressing cells in the CNS of the subject, wherein a level of the CD157-expressing cells above a predetermined threshold is indicative of the inflammatory disease or disorder of the CNS.
- CNS central nervous system
- diagnosis refers to determining presence or absence of a pathology (e.g., an inflammatory disease or disorder of the central nervous system), classifying a pathology or a symptom, determining a severity of the pathology, monitoring pathology progression, forecasting an outcome of a pathology and/or prospects of recovery and screening of a subject for a specific disease.
- a pathology e.g., an inflammatory disease or disorder of the central nervous system
- analyzing is effected using an agent capable of binding CD157 on CD157-expressing cells in the CNS of the subject.
- the agent capable of binding CD 157 on the CD 157- expressing cells is an antibody or fragment thereof.
- the agent capable of binding CD 157 on the CD 157- expressing cells is an antibody mimetic.
- the agent capable of binding CD 157 on the CD157-expressing cells comprises an aptamer.
- the level of CD 157- expressing cells in the CNS is analyzed.
- analyzing the level of CD 157- expressing cells comprises analyzing the expression level and/or spatial distribution of CD157- expressing cells in the CNS of the subject.
- CD157-expressing cells can vary during progression of the inflammatory disease or disorder in the CNS, and/or during treatment of the inflammatory disease or disorder in the CNS.
- CD157-expressing cells can be identified, and their level in the CNS can be quantified using an agent which specifically binds a CD 157 antigen on the surface of the cells using any immunological method in-vitro (e.g., immunohistochemistry, immunofluorescence, FACS, ELISA, and Western Blot) or in-vivo (e.g., using a detectable moiety attached to the agent (e.g., antibody, antibody mimetic or aptamer) for imaging in the subject, e.g., for Positron Emission Tomagraphy (PET), single-photon emission computed tomography (SPECT), Magnetic Resonance Imaging (MRI), bioluminescence and/or near-infrared (NIR) fluorescence).
- PET Positron Emission Tomagraphy
- SPECT single-photon emission computed tomography
- MRI Magnetic Resonance Imaging
- NIR near-infrared fluorescence
- the antibody can be attached directly to a detectable moiety, or indirectly such as by an affinity tag (a member of a binding pair) which is identifiable by a secondary binding moiety (or binding pair).
- the antibody or fragment thereof is conjugated to a detection moiety.
- detectable or reporter moieties may be conjugated to the agent (e.g., antibody or fragment thereof) of the invention. These include, but not are limited to, a radioactive isotope (such as [125] iodine), a phosphorescent chemical, a chemiluminescent chemical, a fluorescent chemical (fluorophore), an enzyme, a fluorescent polypeptide, an affinity tag, and molecules (e.g., contrast agents) detectable by Positron Emission Tomagraphy (PET), singlephoton emission computed tomography (SPECT), Magnetic Resonance Imaging (MRI) bioluminescence and/or near- infrared (NIR).
- PET Positron Emission Tomagraphy
- SPECT singlephoton emission computed tomography
- MRI Magnetic Resonance Imaging
- NIR near- infrared
- the agent capable of binding CD157 e.g., the anti-CD157 antibody, antibody fragment or mimetic thereof, aptamer
- a radioactive moiety preferably inert and stable, and should have a preserved immunoreactivity.
- Antibodies can be conjugated with a pair of radiometal and a chelator.
- One approach is to first modify the antibody with a chelator, and then radiolabeling the antibody.
- the antibody can be labeled with 89 Zr, M Cu, 68 Ga, 52 Mn, 86 Y, 66 Ga, VSc, and/or 18 F as in [ 18 F]A1F (reviewed in Marion Chomet et al., 2021; Bioconjug Chem. 32(7): 1315-1330; “State of the Art in Radiolabeling of Antibodies with Common and Uncommon Radiometals for Preclinical and Clinical Immuno-PET”; which is fully incorporated herein by reference in its entirety).
- PET Positron Emission Tomagraphy
- SPECT single-photon emission computed tomography
- the antibody can be labeled with superparamagnetic iron oxide nanoparticles, gadolinium, or Manganese oxide nanoparticles.
- the anti-CD157 agent can also be conjugated to bioluminescence and/or near-infrared (NIR) fluorescent probes or nanoparticles and be used for in-vivo applications.
- NIR near-infrared
- fluorophores and fluorescent nanoparticles include fluorophores (e.g. DyLight 680, Alexa Fluor 680, Cy5.5, IRFye680, DyLight 800, Cy-7, Cy-7.5, Alexa Fluor 790, IRDye800CW), indocyanine green (ICG), pafolacianine (CytaluxTM), polymethine cyanine (e.g. IR-1040, IR-1048, IR-1051, IR-780, and IR-1061) or donor-acceptor-donor (D-A-D) architecture (e.g. CH1055).
- fluorophores e.g. DyLight 680, Alexa Fluor 680, Cy5.5, IRFye680, DyLight 800, Cy-7, Cy-7.5, Alexa Fluor 790, IRDye800CW
- ICG indocyanine green
- CataluxTM pafolacianine
- polymethine cyanine e.g. IR
- the level is typically compared to control such as the level CD157-expressing cells in a control tissue or cells.
- control tissue corresponds to the brain area (region) which is analyzed in the brain of the subject in need thereof (e.g., the subject having the disease or disorder).
- control used in the method of diagnosing the inflammatory disease or disorder of the CNS is of subject(s) who are devoid of the inflammatory disease or disorder of the CNS (e.g., healthy subject(s)).
- a level of the CD157-expressing cells above a predetermined threshold refers to at least about 10 %, e.g., higher than about 20 %, e.g., higher than about 30 %, e.g., higher than about 40 %, e.g., higher than about 50 %, e.g., higher than about 60 %, higher than about 70 %, higher than about 80 %, higher than about 90 %, higher than about 2 times, higher than about three times, higher than about four time, higher than about five times, higher than about six times, higher than about seven times, higher than about eight times, higher than about nine times, higher than about 20 times, higher than about 50 times, higher than about 100 times, higher than about 200 times, higher than about 350, higher than about 500 times, higher than about 1000 times, or more relative to a predetermined threshold of the control.
- a method of diagnosing and treating an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising:
- the agent capable of treating the inflammatory disease or disorder of the CNS comprises an agent capable of binding CD157 on the CD157-expressing cells of the CNS, the agent capable of mediating a therapeutic effect.
- the present inventors have further envisaged that presence of the CD157-expressing cells in the CNS can be used for identifying a tumor mass in the CNS, and thus can assist in removing the tumor mass during a surgery.
- the method further comprising:
- step (c) repeating step (a) following resecting the tumor.
- the method further comprises distinguishing between a tumor mass (identified by presence of CD157-expressing cells) or nontumor edema (which devoid of CD157-expressing cells).
- resecting is guided by monitoring presence of the CD157-expressing cells above a predetermined threshold using for example an imaging technique such as MRI.
- the resecting is performed in real-time along with analyzing the level of CD157-expressing cells.
- the level of CD157-expressing cells can be used to monitor the efficacy of treatment of the inflammatory disease or disorder of the central nervous system (CNS). For example, a decrease in the level of CD157-expressing cells following the treatment can indicate of the efficacy of the therapy. In addition, a change (e.g., reduction) in the spatial distribution of the CD157-expressing cells can indicate efficacy of treatment.
- CNS central nervous system
- a method of monitoring efficacy of a therapy to an inflammatory disease or disorder of the central nervous system (CNS) in a subject in need thereof comprising analyzing a level of CD157- expressing cells in the CNS of the subject having been treated with an agent capable of treating the inflammatory disease or disorder of the CNS, and wherein a decrease in the level of CD157- expressing cells in the CNS of the subject from a predetermined threshold following the therapy is indicative of efficacy of the therapy, thereby monitoring efficacy of the therapy.
- CNS central nervous system
- a decrease in the level of CD 157- expressing cells in the CNS of the subject from a predetermined threshold refers to a decrease of least about 10 %, about 20 %, about 30 %, about 40 %, e.g., about 50 %, e.g., about 60 %, about 70 %, about 80 %, about 90 %, about 95 %, about 99% from the predetermined threshold as determined by a control.
- the control used in the method of monitoring the efficacy of a therapy is of a subject who is diagnosed with the inflammatory disease or disorder of the CNS.
- control can be a reference expression data obtained from multiple control subjects (e.g., at least 2, 5, 10, 20 or more) who are diagnosed with the inflammatory disease or disorder of the CNS.
- the predetermined threshold is the level of CD157-expressing cells in the subject prior to administering the therapy.
- the exogenous polynucleotide encoding an expression product capable of alleviating at least one symptom of the inflammatory disease or disorder, wherein the exogenous polynucleotide is under the transcriptional control of a cis acting regulatory element active specifically in a CD157-expressing cell, can be part of a nucleic acid construct.
- the nucleic acid construct is preferably suitable for mammalian cell expression.
- Such a nucleic acid construct includes a promoter sequence for directing transcription of polynucleotide sequence of interest in the cell in a constitutive or inducible manner.
- the nucleic acid construct (also referred to herein as an "expression vector") of some embodiments of the invention includes additional sequences which render this vector suitable for replication and integration in prokaryotes, eukaryotes, or preferably both (e.g., shuttle vectors).
- a typical cloning vectors may also contain a transcription and translation initiation sequence, transcription and translation terminator and a polyadenylation signal.
- such constructs will typically include a 5' LTR, a tRNA binding site, a packaging signal, an origin of second-strand DNA synthesis, and a 3' LTR or a portion thereof.
- the nucleic acid construct of some embodiments of the invention typically includes a signal sequence for secretion of the peptide from a host cell in which it is placed.
- the signal sequence for this purpose is a mammalian signal sequence or the signal sequence of the polypeptide variants of some embodiments of the invention.
- Eukaryotic promoters typically contain two types of recognition sequences, the TATA box and upstream promoter elements.
- the TATA box located 25-30 base pairs upstream of the transcription initiation site, is thought to be involved in directing RNA polymerase to begin RNA synthesis.
- the other upstream promoter elements determine the rate at which transcription is initiated.
- the promoter utilized by the nucleic acid construct of some embodiments of the invention is active in the specific cell population transformed.
- cell type- specific and/or tissue-specific promoters include promoters such as albumin that is liver specific [Pinkert et al., (1987) Genes Dev. 1:268-277], lymphoid specific promoters [Calame et al., (1988) Adv. Immunol. 43:235-275]; in particular promoters of T-cell receptors [Winoto et al., (1989) EMBO J. 8:729-733] and immunoglobulins; [Banerji et al.
- neuron-specific promoters such as the neurofilament promoter [Byrne et al. (1989) Proc. Natl. Acad. Sci. USA 86:5473-5477], pancreas-specific promoters [Edlunch et al. (1985) Science 230:912-916] or mammary gland- specific promoters such as the milk whey promoter (U.S. Pat. No. 4,873,316 and European Application Publication No. 264,166).
- Enhancer elements can stimulate transcription up to 1,000 fold from linked homologous or heterologous promoters. Enhancers are active when placed downstream or upstream from the transcription initiation site. Many enhancer elements derived from viruses have a broad host range and are active in a variety of tissues. For example, the SV40 early gene enhancer is suitable for many cell types. Other enhancer/promoter combinations that are suitable for some embodiments of the invention include those derived from polyoma virus, human or murine cytomegalovirus (CMV), the long term repeat from various retroviruses such as murine leukemia virus, murine or Rous sarcoma virus and HIV. See, Enhancers and Eukaryotic Expression, Cold Spring Harbor Press, Cold Spring Harbor, N.Y. 1983, which is incorporated herein by reference.
- CMV cytomegalovirus
- the promoter is preferably positioned approximately the same distance from the heterologous transcription start site as it is from the transcription start site in its natural setting. As is known in the art, however, some variation in this distance can be accommodated without loss of promoter function.
- the vector may or may not include a eukaryotic replicon.
- mammalian expression vectors include, but are not limited to, pcDNA3, pcDNA3.1 (+/-), pGL3, pZeoSV2(+/-), pSecTag2, pDisplay, pEF/myc/cyto, pCMV/myc/cyto, pCR3.1, pSinRep5, DH26S, DHBB, pNMTl, pNMT41, pNMT81, which are available from Invitrogen, pCI which is available from Promega, pMbac, pPbac,pBK-RSV and pBK-CMV which are available from Strategene, pTRES which is available from Clontech, and their derivatives.
- Expression vectors containing regulatory elements from eukaryotic viruses such as retroviruses can be also used.
- SV40 vectors include pSVT7 and pMT2.
- Vectors derived from bovine papilloma virus include pB V- 1MTHA, and vectors derived from Epstein Bar virus include pHEBO, and p2O5.
- exemplary vectors include pMSG, pAV009/A + , pMTO10/A + , pMAMneo-5, baculovirus pDSVE, and any other vector allowing expression of proteins under the direction of the SV-40 early promoter, SV-40 later promoter, metallothionein promoter, murine mammary tumor virus promoter, Rous sarcoma virus promoter, polyhedrin promoter, or other promoters shown effective for expression in eukaryotic cells.
- viruses are very specialized infectious agents that have evolved, in many cases, to elude host defense mechanisms.
- viruses infect and propagate in specific cell types.
- the targeting specificity of viral vectors utilizes its natural specificity to specifically target predetermined cell types and thereby introduce a recombinant gene into the infected cell.
- the type of vector used by some embodiments of the invention will depend on the cell type transformed. The ability to select suitable vectors according to the cell type transformed is well within the capabilities of the ordinary skilled artisan and as such no general description of selection consideration is provided herein.
- bone marrow cells can be targeted using the human T cell leukemia virus type I (HTLV-I) and kidney cells may be targeted using the heterologous promoter present in the baculovirus Autographa californica nucleopolyhedrovirus (AcMNPV) as described in Liang CY et al., 2004 (Arch Virol. 149: 51-60).
- HTLV-I human T cell leukemia virus type I
- AcMNPV Autographa californica nucleopolyhedrovirus
- Recombinant viral vectors are useful for in vivo expression of the polynucleotide of insterest since they offer advantages such as lateral infection and targeting specificity.
- Lateral infection is inherent in the life cycle of, for example, retrovirus and is the process by which a single infected cell produces many progeny virions that bud off and infect neighboring cells. The result is that a large area becomes rapidly infected, most of which was not initially infected by the original viral particles. This is in contrast to vertical-type of infection in which the infectious agent spreads only through daughter progeny.
- Viral vectors can also be produced that are unable to spread laterally. This characteristic can be useful if the desired purpose is to introduce a specified gene into only a localized number of targeted cells.
- nucleic acids by viral infection offers several advantages over other methods such as lipofection and electroporation, since higher transfection efficiency can be obtained due to the infectious nature of viruses.
- nucleic acid transfer techniques include transfection with viral or non- viral constructs, such as adenovirus, lentivirus, retrovirus, Herpes simplex I virus, or adeno- associated virus (AAV) and lipid-based systems.
- viral or non- viral constructs such as adenovirus, lentivirus, retrovirus, Herpes simplex I virus, or adeno- associated virus (AAV) and lipid-based systems.
- Useful lipids for lipid-mediated transfer of the gene are, for example, DOTMA, DOPE, and DC-Chol [Tonkinson et al., Cancer Investigation, 14(1): 54-65 (1996)].
- the most preferred constructs for use in gene therapy are viruses, most preferably adenoviruses, AAV, lentiviruses, or retroviruses.
- a viral construct such as a retroviral construct includes at least one transcriptional promoter/enhancer or locus-defining elements), or other elements that control gene expression by other means such as alternate splicing, nuclear RNA export, or post-translational modification of messenger.
- Such vector constructs also include a packaging signal, long terminal repeats (LTRs) or portions thereof, and positive and negative strand primer binding sites appropriate to the virus used, unless it is already present in the viral construct.
- LTRs long terminal repeats
- such a construct typically includes a signal sequence for secretion of the peptide from a host cell in which it is placed.
- the signal sequence for this purpose is a mammalian signal sequence or the signal sequence of the polypeptide variants of some embodiments of the invention.
- the construct may also include a signal that directs polyadenylation, as well as one or more restriction sites and a translation termination sequence.
- a signal that directs polyadenylation will typically include a 5' LTR, a tRNA binding site, a packaging signal, an origin of second-strand DNA synthesis, and a 3' LTR or a portion thereof.
- Other vectors can be used that are non- viral, such as cationic lipids, polylysine, and dendrimers.
- the agent which is capable of binding CD157 on CD157-expressing cells of the CNS of some embodiments of the invention, or the exogenous polynucleotide of some embodiments of the invention encoding an expression product capable of alleviating at least one symptom of the inflammatory disease or disorder, wherein the exogenous polynucleotide is under the transcriptional control of a cis acting regulatory element active specifically in a CD157-expressing cell, can be administered to an organism per se, or in a pharmaceutical composition where it is mixed with suitable carriers or excipients.
- a "pharmaceutical composition” refers to a preparation of one or more of the active ingredients described herein with other chemical components such as physiologically suitable carriers and excipients.
- the purpose of a pharmaceutical composition is to facilitate administration of a compound to an organism.
- active ingredient refers to the agent which is capable of binding CD157 on CD157-expressing cells of the CNS of some embodiments of the invention, or the exogenous polynucleotide of some embodiments of the invention encoding an expression product capable of alleviating at least one symptom of the inflammatory disease or disorder, wherein the exogenous polynucleotide is under the transcriptional control of a cis acting regulatory element active specifically in a CD157-expressing cell, accountable for the biological effect.
- physiologically acceptable carrier and “pharmaceutically acceptable carrier” which may be interchangeably used refer to a carrier or a diluent that does not cause significant irritation to an organism and does not abrogate the biological activity and properties of the administered compound.
- An adjuvant is included under these phrases.
- excipient refers to an inert substance added to a pharmaceutical composition to further facilitate administration of an active ingredient.
- excipients include calcium carbonate, calcium phosphate, various sugars and types of starch, cellulose derivatives, gelatin, vegetable oils and polyethylene glycols.
- Suitable routes of administration may, for example, include oral, rectal, transmucosal, especially transnasal, intestinal or parenteral delivery, including intramuscular, subcutaneous and intramedullary injections as well as intrathecal, direct intraventricular, intracardiac, e.g., into the right or left ventricular cavity, into the common coronary artery, intravenous, inrtaperitoneal, intranasal, or intraocular injections.
- neurosurgical strategies e.g., intracerebral injection or intracerebroventricular infusion
- molecular manipulation of the agent e.g., production of a chimeric fusion protein that comprises a transport peptide that has an affinity for an endothelial cell surface molecule in combination with an agent that is itself incapable of crossing the BBB
- pharmacological strategies designed to increase the lipid solubility of an agent (e.g., conjugation of water-soluble agents to lipid or cholesterol carriers)
- the transitory disruption of the integrity of the BBB by hyperosmotic disruption resulting from the infusion of a mannitol solution into the carotid artery or the use of a biologically active agent such as an angiotensin peptide).
- each of these strategies has limitations, such as the inherent risks associated with an invasive surgical procedure, a size limitation imposed by a limitation inherent in the endogenous transport systems, potentially undesirable biological side effects associated with the systemic administration of a chimeric molecule comprised of a carrier motif that could be active outside of the CNS, and the possible risk of brain damage within regions of the brain where the BBB is disrupted, which renders it a suboptimal delivery method.
- compositions of some embodiments of the invention may be manufactured by processes well known in the art, e.g., by means of conventional mixing, dissolving, granulating, dragee- making, levigating, emulsifying, encapsulating, entrapping or lyophilizing processes.
- compositions for use in accordance with some embodiments of the invention thus may be formulated in conventional manner using one or more physiologically acceptable carriers comprising excipients and auxiliaries, which facilitate processing of the active ingredients into preparations which, can be used pharmaceutically. Proper formulation is dependent upon the route of administration chosen.
- the active ingredients of the pharmaceutical composition may be formulated in aqueous solutions, preferably in physiologically compatible buffers such as Hank’s solution, Ringer’s solution, or physiological salt buffer.
- physiologically compatible buffers such as Hank’s solution, Ringer’s solution, or physiological salt buffer.
- penetrants appropriate to the barrier to be permeated are used in the formulation. Such penetrants are generally known in the art.
- the pharmaceutical composition can be formulated readily by combining the active compounds with pharmaceutically acceptable carriers well known in the art.
- Such carriers enable the pharmaceutical composition to be formulated as tablets, pills, dragees, capsules, liquids, gels, syrups, slurries, suspensions, and the like, for oral ingestion by a patient.
- Pharmacological preparations for oral use can be made using a solid excipient, optionally grinding the resulting mixture, and processing the mixture of granules, after adding suitable auxiliaries if desired, to obtain tablets or dragee cores.
- Suitable excipients are, in particular, fillers such as sugars, including lactose, sucrose, mannitol, or sorbitol; cellulose preparations such as, for example, maize starch, wheat starch, rice starch, potato starch, gelatin, gum tragacanth, methyl cellulose, hydroxypropylmethyl-cellulose, sodium carbomethylcellulose; and/or physiologically acceptable polymers such as polyvinylpyrrolidone (PVP).
- disintegrating agents may be added, such as cross-linked polyvinyl pyrrolidone, agar, or alginic acid or a salt thereof such as sodium alginate.
- Dragee cores are provided with suitable coatings.
- suitable coatings For this purpose, concentrated sugar solutions may be used which may optionally contain gum arabic, talc, polyvinyl pyrrolidone, carbopol gel, polyethylene glycol, titanium dioxide, lacquer solutions and suitable organic solvents or solvent mixtures.
- Dyestuffs or pigments may be added to the tablets or dragee coatings for identification or to characterize different combinations of active compound doses.
- compositions which can be used orally include push-fit capsules made of gelatin as well as soft, sealed capsules made of gelatin and a plasticizer, such as glycerol or sorbitol.
- the push-fit capsules may contain the active ingredients in admixture with filler such as lactose, binders such as starches, lubricants such as talc or magnesium stearate and, optionally, stabilizers.
- the active ingredients may be dissolved or suspended in suitable liquids, such as fatty oils, liquid paraffin, or liquid polyethylene glycols.
- stabilizers may be added. All formulations for oral administration should be in dosages suitable for the chosen route of administration.
- compositions may take the form of tablets or lozenges formulated in conventional manner.
- the active ingredients for use according to some embodiments of the invention are conveniently delivered in the form of an aerosol spray presentation from a pressurized pack or a nebulizer with the use of a suitable propellant, e.g., dichlorodifluoromethane, trichlorofluoromethane, dichloro-tetrafluoroethane or carbon dioxide.
- a suitable propellant e.g., dichlorodifluoromethane, trichlorofluoromethane, dichloro-tetrafluoroethane or carbon dioxide.
- the dosage unit may be determined by providing a valve to deliver a metered amount.
- Capsules and cartridges of, e.g., gelatin for use in a dispenser may be formulated containing a powder mix of the compound and a suitable powder base such as lactose or starch.
- compositions described herein may be formulated for parenteral administration, e.g., by bolus injection or continuous infusion.
- Formulations for injection may be presented in unit dosage form, e.g., in ampoules or in multidose containers with optionally, an added preservative.
- the compositions may be suspensions, solutions or emulsions in oily or aqueous vehicles, and may contain formulatory agents such as suspending, stabilizing and/or dispersing agents.
- compositions for parenteral administration include aqueous solutions of the active preparation in water-soluble form
- suspensions of the active ingredients may be prepared as appropriate oily or water based injection suspensions.
- Suitable lipophilic solvents or vehicles include fatty oils such as sesame oil, or synthetic fatty acids esters such as ethyl oleate, triglycerides or liposomes.
- Aqueous injection suspensions may contain substances, which increase the viscosity of the suspension, such as sodium carboxymethyl cellulose, sorbitol or dextran.
- the suspension may also contain suitable stabilizers or agents which increase the solubility of the active ingredients to allow for the preparation of highly concentrated solutions.
- the active ingredient may be in powder form for constitution with a suitable vehicle, e.g., sterile, pyrogen- free water based solution, before use.
- a suitable vehicle e.g., sterile, pyrogen- free water based solution
- compositions of some embodiments of the invention may also be formulated in rectal compositions such as suppositories or retention enemas, using, e.g., conventional suppository bases such as cocoa butter or other glycerides.
- compositions suitable for use in context of some embodiments of the invention include compositions wherein the active ingredients are contained in an amount effective to achieve the intended purpose. More specifically, a therapeutically effective amount means an amount of active ingredients effective to prevent, alleviate or ameliorate symptoms of a disorder (e.g., the inflammatory disease or disorder of the central nervous system (CNS)) or prolong the survival of the subject being treated.
- a disorder e.g., the inflammatory disease or disorder of the central nervous system (CNS)
- CNS central nervous system
- the therapeutically effective amount or dose can be estimated initially from in vitro and cell culture assays.
- a dose can be formulated in animal models to achieve a desired concentration or titer. Such information can be used to more accurately determine useful doses in humans.
- Toxicity and therapeutic efficacy of the active ingredients described herein can be determined by standard pharmaceutical procedures in-vitro, in cell cultures or experimental animals.
- the data obtained from these in vitro and cell culture assays and animal studies can be used in formulating a range of dosage for use in human.
- the dosage may vary depending upon the dosage form employed and the route of administration utilized.
- the exact formulation, route of administration and dosage can be chosen by the individual physician in view of the patient's condition. (See e.g., Fingl, et al., 1975, in "The Pharmacological Basis of Therapeutics", Ch. 1 P-l).
- Dosage amount and interval may be adjusted individually to provide levels of the active ingredient are sufficient to induce or suppress the biological effect (minimal effective concentration, MEC).
- MEC minimum effective concentration
- the MEC will vary for each preparation, but can be estimated from in vitro data. Dosages necessary to achieve the MEC will depend on individual characteristics and route of administration. Detection assays can be used to determine plasma concentrations.
- dosing can be of a single or a plurality of administrations, with course of treatment lasting from several days to several weeks or until cure is effected or diminution of the disease state is achieved.
- compositions to be administered will, of course, be dependent on the subject being treated, the severity of the affliction, the manner of administration, the judgment of the prescribing physician, etc.
- compositions of some embodiments of the invention may, if desired, be presented in a pack or dispenser device, such as an FDA approved kit, which may contain one or more unit dosage forms containing the active ingredient.
- the pack may, for example, comprise metal or plastic foil, such as a blister pack.
- the pack or dispenser device may be accompanied by instructions for administration.
- the pack or dispenser may also be accommodated by a notice associated with the container in a form prescribed by a governmental agency regulating the manufacture, use or sale of pharmaceuticals, which notice is reflective of approval by the agency of the form of the compositions or human or veterinary administration. Such notice, for example, may be of labeling approved by the U.S. Food and Drug Administration for prescription drugs or of an approved product insert.
- Compositions comprising a preparation of the invention formulated in a compatible pharmaceutical carrier may also be prepared, placed in an appropriate container, and labeled for treatment of an indicated condition, as is further detailed above.
- compositions, method or structure may include additional ingredients, steps and/or parts, but only if the additional ingredients, steps and/or parts do not materially alter the basic and novel characteristics of the claimed composition, method or structure.
- a compound or “at least one compound” may include a plurality of compounds, including mixtures thereof.
- range format is merely for convenience and brevity and should not be construed as an inflexible limitation on the scope of the invention. Accordingly, the description of a range should be considered to have specifically disclosed all the possible subranges as well as individual numerical values within that range. For example, description of a range such as from 1 to 6 should be considered to have specifically disclosed subranges such as from 1 to 3, from 1 to 4, from 1 to 5, from 2 to 4, from 2 to 6, from 3 to 6 etc., as well as individual numbers within that range, for example, 1, 2, 3, 4, 5, and 6. This applies regardless of the breadth of the range.
- a numerical range is indicated herein, it is meant to include any cited numeral (fractional or integral) within the indicated range.
- the phrases “ranging/ranges between” a first indicate number and a second indicate number and “ranging/ranges from” a first indicate number “to” a second indicate number are used herein interchangeably and are meant to include the first and second indicated numbers and all the fractional and integral numerals therebetween.
- method refers to manners, means, techniques and procedures for accomplishing a given task including, but not limited to, those manners, means, techniques and procedures either known to, or readily developed from known manners, means, techniques and procedures by practitioners of the chemical, pharmacological, biological, biochemical and medical arts.
- treating includes abrogating, substantially inhibiting, slowing or reversing the progression of a condition, substantially ameliorating clinical or aesthetical symptoms of a condition or substantially preventing the appearance of clinical or aesthetical symptoms of a condition.
- any Sequence Identification Number can refer to either a DNA sequence or a RNA sequence, depending on the context where that SEQ ID NO is mentioned, even if that SEQ ID NO is expressed only in a DNA sequence format or a RNA sequence format.
- a SEQ ID NO when expressed in a DNA sequence format (e.g., reciting T for thymine), it can refer to either a DNA sequence that corresponds to a nucleic acid sequence, or the RNA sequence of an RNA molecule nucleic acid sequence.
- RNA sequence format e.g., reciting U for uracil
- it can refer to either the sequence of a RNA molecule comprising a dsRNA, or the sequence of a DNA molecule that corresponds to the RNA sequence shown.
- both DNA and RNA molecules having the sequences disclosed with any substitutes are envisioned.
- mice tdTomato ⁇ (Ai9; RCL-tdT, Jax #007909), Cx3crl creER YEP (B6.129P2(Cg)- Cx3crltm2. l(cre/ERT2)Litt/WganJ, Jax #021160), and C57BL/6J (B6/J, Jax #000664) mice were purchased from Jackson Laboratory (Bar Harbor, ME, USA).
- NOD-Cas9/GFP Rosa26-LSL-Cas9 knockin on NOD, Jax #026431 were used.
- tdTomato ll/wl Cx3crl creER/wt mice were generated by breeding Cx3crl creER/creER mice with tdTomato 11711 mice.
- Fl heterozygote mice were generated by breeding NOD mice and C57B1/6 mice. All animals were housed and maintained in laminar flow cabinets under specific pathogen- free (SPF) conditions in accordance with current regulations and standards of the Israel Ministry of Health. All animal protocols were approved by the Tel Aviv University Institutional Animal Care and Use Committee.
- SPF pathogen- free
- EAE was induced by immunization of female mice with myelin oligodendrocyte glycoprotein peptide (MOG35-55) emulsified in complete Freund’s adjuvant (Difco Laboratories) at a dose of 100 pg per mouse, followed by the administration of pertussis toxin (100 ng per mouse; List biological laboratories, Inc.) on Days 0 and 2 as previously described [L. Mayo et al., Nat Med (2014) 20(10): 1147-56]. Clinical signs of EAE were assessed according to the following score: 0, no signs of disease; 1, loss of tone in the tail; 2, hind limb paresis; 3, hind limb paralysis; 4, tetraplegia; 5, moribund.
- tdTomato ll/wl Cx3crl creER/wt mice were treated with 100 mg/kg Tamoxifen (Sigma- Aldrich, #T5648) for three consecutive days. EAE was induced 7 weeks following tamoxifen treatment.
- Mononuclear cells were isolated from the CNS as previously described [Mayo L. et al., Nat A7e ⁇ 7(2014) 20: 1147- 1156]. Cells were stained with CD1 lb (1: 100, BioLegend or Invitrogen) , CD45 (1:200, BioLegend, BioGems), CCR2 (1:200, R&D), Ly6C (1: 100, BioLegend), CD157 (1:50, BD) or biotinylated anti-CD157 with fluorophore-conjugated streptavidin.
- CDC Complement dependent cytotoxicity
- RAW264.7 cells were incubated for 30 minutes with anti-CD157 antibodies or isotype control. Next, cells were incubated with rabbit complement serum (Sigma- Aldrich) for 3 hours in 37 °C.
- ADCC Antibody-dependent cellular cytotoxicity assay
- RAW264.7 cells were incubated for 30 minutes with anti-CD157 antibodies or isotype control, then freshly isolated NK cells (Stemcell, #19815) were added and incubated for 4 hours in 37 °C.
- mice For cell depletion experiments, adult female C57BL/6J wild-type (WT) mice received 100 pg anti-CD157 mAbs (BP3) or isotype control (Bio X Cell), daily, from day 7 post immunization. On day 10, blood samples were collected for FACS analysis of monocyte depletion. NOD- C57BL/6 Fl female mice received 50 pg anti-CD157 mAbs (BP3) or isotype control (Bio X Cell), every other day, from the beginning of the progressive phase of the disease (day 37).
- BP3 anti-CD157 mAbs
- Bio X Cell isotype control
- Peripheral blood was obtained from the tail vein and collected into PBS with 5 mM EDTA. Red blood cells were lysed using Lysing Solution (BD) and the white blood cells were resuspended in FACS buffer for further staining. Peripheral blood cells were stained for CD45 (1: 100, BioLegend), Ly6G (1:200, BioLegend), CD115 (1:200, BioGems), CDl lb (1:200, BioLegend), Ly6C (1:200, BioLegend), CCR2 (1: 100, R&D) and CD157 (1:50, BD).
- Protein samples from the blood and CNS of naive and EAE C56BL/6 mice were prepared in RIP A lysis buffer and separated by S DS -polyacrylamide gel electrophoresis. After transfer to nitrocellulose membranes, blots were probed separately against mouse CD157 (R&D) and Vinculin (Proteintech) as indicated.
- the secondary antibody used was horseradish peroxidase- linked anti-rabbit IgG (Cell Signaling Technology), and membranes were visualized using ImageQuantTM 800.
- Bioinformatics Poly-A/T stretches and Illumina adapters were trimmed from the reads using Cutadapt as previously described [Martin M., Cutadapt removes adapter sequences from high-throughput sequencing reads (2011) 17: 3]. Resulting reads shorter than 30 bp were discarded. Remaining reads were mapped onto 3’ UTR regions (1000 bases) of the M. musculus, mmlO genome according to Refseq annotations, using STAR [A. Dobin et al., STAR: ultrafast universal RNA-seq aligner. Bioinformatics (2012) 29: 15-21] with EndToEnd option and outFilterMismatchNoverLmax set to 0.05.
- Deduplication was carried out by flagging all reads that were mapped to the same gene and had the same UMI. Counts for each gene were quantified using htseq-count [Anders S. et al., HTSeq — a Python framework to work with high-throughput sequencing data. Bioinformatics (2014) 31: 166-169], using the gtf above and corrected for UMI saturation. Differentially expressed genes were identified using DESeq2 [Love M. I. et al., Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2. Genome Biology (2014) 15:550] with the betaPrior, cooksCutoff and independentFiltering parameters set to False.
- CD157 expression is upregulated in the CNS during neuroinflammation
- CD 157 is a potential marker for infiltrating cells in the CNS
- CD157 (Bstl) expression is significantly elevated in the blood during EAE, and while CD157 expression could not be detected in the naive CNS, there was a significant elevation during EAE ( Figures 1A-D).
- CD157 expression in the CNS is confined to infiltrating monocytes
- CD157 is expressed by CD1 lb + CD45 hlgh cells (i.e. monocytes) and not by CD1 lb + CD45 low (i.e. microglial cells), or other cell populations ( Figures 2B and 2C).
- CDl lb + CD45 low and CDl lb + CD45 hlgh cells in the CNS revealed that monocytes are CD157 + CCR2 + (61.18 ⁇ 9.78) and CD157 + Ly6c hlgh (60.16 ⁇ 9.27), compared to the microglial population (9.39 ⁇ 3.44 and 1.58 ⁇ 0.43, respectively) ( Figures 2D and 2E).
- CD157 + cells are also CD45 hlgh CCR2 + Ly6c hlgh .
- CD45 levels of expression can vary in different inflammatory states, and therefore is not an optimal method to distinguish infiltrating monocytes from resident microglial cells during neuroinflammation.
- a fate mapping model was generated ( Figure 3A). idTomalo 11 '' 11 mice were crossed with Cx3crr reER:E fp to create Cx3crl creER:Ey: IP tdTomato+* hybrid. Following tamoxifen (TMX) treatment, Cx3crl expressing cells, i.e., monocytes and microglial cells, express tdTomato.
- TMX tamoxifen
- C57BL/6 WT mice received bone marrow transplantation from C57BL/6 WT or Cx3crl creER:Ey f p mice to replace their original bone marrow.
- Transplantation was evaluated by eYFP levels in the blood of transplanted mice (Figure 3F).
- transplanted mice were immunized for EAE and cellular infiltration to the CNS of these mice was analyzed.
- CDl lb + eYFP + cells are only present in the CNS during EAE, and not in naive, indicating these are infiltrating cells ( Figures 3G-H).
- CDl lb + eYFP + cells are also CD157 + (93.06 ⁇ 1.78, Figure 3H).
- immunofluorescence staining showed that eYFP + cells are also CD157 + (95.66 ⁇ 0.84, Figure 31).
- Anti-CD157 mAbs mediates cell death and ameliorates disease development
- anti-CD157 mAbs were generated which are capable of mediating in-vitro complementdependent cytotoxicity (CDC) ( Figure 4A) and antibody- dependent cellular cytotoxicity (ADCC) ( Figure 4B) when tested on RAW264.7 murine macrophage cell line.
- CDC in-vitro complementdependent cytotoxicity
- ADCC antibody- dependent cellular cytotoxicity
- CD157 is a marker for infiltrating monocytes in the progressive model ofEAE
- CD157 + cells were analyzed in the CNS at the progressive phase of the disease (Figure 5A).
- CDl lb + CD157 + cells are present only in the inflamed CNS ( Figure 5B) and CD157 is expressed by infiltrating monocytes (CDl lb + CD45 hlgh cells), and not by other cell populations ( Figure 5C).
- CD157 expression can be used to identify infiltrating monocytes also at the progressive form of EAE.
- mice were treated with anti-CD157 or isotype-control mAbs to eliminate the cells.
- Daily mAb administration 50 g pre mouse
- initiated 40 days after EAE induction resulted in suppression of disease progression in terms of clinical score, demyelination and axonal loss ( Figures 5D-F), and significantly decrease monocytes recruitment to the CNS ( Figure 5G).
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